refactor protocol, put test stubs in place, linting, prep for cli tests
This commit is contained in:
parent
9157d12081
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54
xcat/cli.py
54
xcat/cli.py
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@ -1,29 +1,32 @@
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import argparse, textwrap
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from xcat.utils import *
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import argparse
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import textwrap
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import subprocess
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import xcat.db as db
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import xcat.userInput as userInput
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from xcat.protocol import Protocol
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from xcat.trades import *
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from xcat.protocol import *
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import subprocess
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from xcat.utils import *
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def save_state(trade, tradeid):
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save(trade)
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db.create(trade, tradeid)
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def checkSellStatus(tradeid):
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trade = db.get(tradeid)
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status = seller_check_status(trade)
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print("Trade status: {0}\n".format(status))
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if status == 'init':
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userInput.authorize_fund_sell(trade)
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fund_tx = fund_sell_contract(trade)
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fund_tx = protocol.fund_sell_contract(trade)
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print("Sent fund_tx", fund_tx)
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trade.sell.fund_tx = fund_tx
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save_state(trade, tradeid)
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elif status == 'buyerFunded':
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secret = db.get_secret(tradeid)
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print("Retrieved secret to redeem funds for {0}: {1}".format(tradeid, secret))
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txs = seller_redeem_p2sh(trade, secret)
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txs = protocol.seller_redeem_p2sh(trade, secret)
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if 'redeem_tx' in txs:
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trade.buy.redeem_tx = txs['redeem_tx']
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print("Redeem tx: ", txs['redeem_tx'])
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@ -38,9 +41,10 @@ def checkSellStatus(tradeid):
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elif status == 'sellerRedeemed':
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print("You have already redeemed the p2sh on the second chain of this trade.")
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def buyer_check_status(trade):
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sellState = check_fund_status(trade.sell.currency, trade.sell.p2sh)
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buyState = check_fund_status(trade.buy.currency, trade.buy.p2sh)
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sellState = protocol.check_fund_status(trade.sell.currency, trade.sell.p2sh)
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buyState = protocol.check_fund_status(trade.buy.currency, trade.buy.p2sh)
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if sellState == 'funded' and buyState == 'empty':
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return 'sellerFunded' # step1
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# TODO: Find funding txid. How does buyer get seller redeemed tx?
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@ -54,9 +58,10 @@ def buyer_check_status(trade):
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else:
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return 'init'
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def seller_check_status(trade):
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sellState = check_fund_status(trade.sell.currency, trade.sell.p2sh)
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buyState = check_fund_status(trade.buy.currency, trade.buy.p2sh)
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sellState = protocol.check_fund_status(trade.sell.currency, trade.sell.p2sh)
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buyState = protocol.check_fund_status(trade.buy.currency, trade.buy.p2sh)
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if sellState == 'funded' and buyState == 'empty':
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return 'sellerFunded' # step1
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elif sellState == 'funded' and hasattr(trade.buy, 'redeem_tx'):
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@ -70,6 +75,7 @@ def seller_check_status(trade):
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else:
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return 'init' # step0
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def checkBuyStatus(tradeid):
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trade = db.get(tradeid)
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status = buyer_check_status(trade)
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@ -83,15 +89,17 @@ def checkBuyStatus(tradeid):
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input("Type 'enter' to allow this program to send funds on your behalf.")
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print("Trade commitment", trade.commitment)
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# if verify_p2sh(trade):
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fund_tx = fund_contract(trade.buy)
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fund_tx = protocol.fund_contract(trade.buy)
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print("\nYou sent this funding tx: ", fund_tx)
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trade.buy.fund_tx = fund_tx
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save_state(trade, tradeid)
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elif status == 'sellerRedeemed':
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secret = find_secret_from_fundtx(trade.buy.currency, trade.buy.p2sh, trade.buy.fund_tx)
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secret = protocol.find_secret_from_fundtx(trade.buy.currency,
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trade.buy.p2sh,
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trade.buy.fund_tx)
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if secret != None:
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print("Found secret on blockchain in seller's redeem tx: ", secret)
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txs = redeem_p2sh(trade.sell, secret)
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txs = protocol.redeem_p2sh(trade.sell, secret)
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if 'redeem_tx' in txs:
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trade.sell.redeem_tx = txs['redeem_tx']
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print("Redeem txid: ", trade.sell.redeem_tx)
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@ -103,14 +111,16 @@ def checkBuyStatus(tradeid):
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else:
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print("Secret not found in redeemtx")
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# Import a trade in hex, and save to db
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def importtrade(tradeid, hexstr=''):
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trade = x2s(hexstr)
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trade = db.instantiate(trade)
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import_addrs(trade)
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protocol.import_addrs(trade)
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print(trade.toJSON())
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save_state(trade, tradeid)
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def wormhole_importtrade():
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res = subprocess.call('wormhole receive', shell=True)
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if res == 0:
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@ -123,6 +133,7 @@ def wormhole_importtrade():
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else:
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print("Importing trade using magic-wormhole failed.")
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# Export a trade by its tradeid
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def exporttrade(tradeid, wormhole=False):
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trade = db.get(tradeid)
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@ -138,20 +149,24 @@ def exporttrade(tradeid, wormhole=False):
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print(hexstr)
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return hexstr
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def findtrade(tradeid):
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trade = db.get(tradeid)
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print(trade.toJSON())
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return trade
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def find_role(contract):
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# When regtest created both addrs on same machine, role is both.
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if is_myaddr(contract.initiator) and is_myaddr(contract.fulfiller):
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if protocol.is_myaddr(contract.initiator):
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if protocol.is_myaddr(contract.fulfiller):
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return 'test'
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elif is_myaddr(contract.initiator):
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else:
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return 'initiator'
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else:
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return 'fulfiller'
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def checktrade(tradeid):
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print("In checktrade")
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trade = db.get(tradeid)
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@ -170,22 +185,25 @@ def checktrade(tradeid):
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role = 'buyer'
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checkBuyStatus(tradeid)
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def newtrade(tradeid, **kwargs):
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print("Creating new XCAT trade...")
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erase_trade()
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tradeid, trade= initialize_trade(tradeid, conf=kwargs['conf'])
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tradeid, trade = protocol.initialize_trade(tradeid, conf=kwargs['conf'])
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print("Trade", trade)
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trade = seller_init(tradeid, trade)
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trade = protocol.seller_init(tradeid, trade)
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print("\nUse 'xcat exporttrade [tradeid]' to export the trade and sent to the buyer.\n")
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save_state(trade, tradeid)
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return trade
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def listtrades():
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print("Trades")
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trades = db.dump()
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for trade in trades:
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print("{0}: {1}".format(trade[0], trade[1]))
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def main():
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parser = argparse.ArgumentParser(formatter_class=argparse.RawTextHelpFormatter,
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description=textwrap.dedent('''\
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15
xcat/db.py
15
xcat/db.py
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import plyvel
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from xcat.utils import *
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import binascii
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import sys
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import json
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import ast
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# import binascii
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# import sys
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# import ast
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from xcat.trades import *
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from xcat.utils import *
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db = plyvel.DB('/tmp/xcatDB', create_if_missing=True)
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preimageDB = plyvel.DB('/tmp/preimageDB', create_if_missing=True)
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@ -13,6 +13,7 @@ preimageDB = plyvel.DB('/tmp/preimageDB', create_if_missing=True)
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######## Trades stored by tradeid ###########
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#############################################
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# Takes dict or obj, saves json str as bytes
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def create(trade, tradeid):
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if type(trade) == dict:
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@ -21,6 +22,7 @@ def create(trade, tradeid):
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trade = trade.toJSON()
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db.put(b(tradeid), b(trade))
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# Uses the funding txid as the key to save trade
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def createByFundtx(trade):
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trade = trade.toJSON()
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@ -29,12 +31,14 @@ def createByFundtx(trade):
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txid = jt['sell']['fund_tx']
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db.put(b(txid), b(trade))
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def get(tradeid):
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rawtrade = db.get(b(tradeid))
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tradestr = str(rawtrade, 'utf-8')
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trade = instantiate(tradestr)
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return trade
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def instantiate(trade):
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if type(trade) == str:
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tradestr = json.loads(trade)
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###### Preimages stored by tradeid ##########
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#############################################
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# Stores secret locally in key/value store by tradeid
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def save_secret(tradeid, secret):
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res = preimageDB.put(b(tradeid), b(secret))
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def get_secret(tradeid):
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secret = preimageDB.get(b(tradeid))
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secret = str(secret, 'utf-8')
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@ -67,6 +73,7 @@ def dump():
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results.append((str(k, 'utf-8'), j))
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return results
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def print_entries():
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it = db.iterator()
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with db.iterator() as it:
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181
xcat/protocol.py
181
xcat/protocol.py
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import json
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import os, sys
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from pprint import pprint
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from xcat.utils import *
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from xcat.trades import Contract, Trade
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import xcat.userInput as userInput
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import xcat.db as db
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from xcat.xcatconf import *
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import xcat.utils as utils
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from xcat.xcatconf import ADDRS
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from xcat.trades import Contract, Trade
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from xcat.bitcoinRPC import bitcoinProxy
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from xcat.zcashRPC import zcashProxy
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bitcoinRPC = bitcoinProxy()
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zcashRPC = zcashProxy()
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def is_myaddr(address):
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class Protocol():
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def __init__(self):
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self.bitcoinRPC = bitcoinProxy()
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self.zcashRPC = zcashProxy()
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def is_myaddr(self, address):
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if address[:1] == 'm':
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status = bitcoinRPC.validateaddress(address)
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status = self.bitcoinRPC.validateaddress(address)
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else:
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status = zcashRPC.validateaddress(address)
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status = self.zcashRPC.validateaddress(address)
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status = status['ismine']
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# print("Address {0} is mine: {1}".format(address, status))
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return status
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def find_secret_from_fundtx(currency, p2sh, fundtx):
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def find_secret_from_fundtx(self, currency, p2sh, fundtx):
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if currency == 'bitcoin':
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secret = bitcoinRPC.find_secret(p2sh, fundtx)
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secret = self.bitcoinRPC.find_secret(p2sh, fundtx)
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else:
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secret = zcashRPC.find_secret(p2sh, fundtx)
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secret = self.zcashRPC.find_secret(p2sh, fundtx)
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return secret
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def import_addrs(trade):
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check_fund_status(trade.sell.currency, trade.sell.p2sh)
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check_fund_status(trade.buy.currency, trade.buy.p2sh)
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def import_addrs(self, trade):
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self.check_fund_status(trade.sell.currency, trade.sell.p2sh)
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self.check_fund_status(trade.buy.currency, trade.buy.p2sh)
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def check_p2sh(currency, address):
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def check_p2sh(self, currency, address):
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if currency == 'bitcoin':
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print("Checking funds in Bitcoin p2sh")
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return bitcoinRPC.check_funds(address)
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return self.bitcoinRPC.check_funds(address)
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else:
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print("Checking funds in Zcash p2sh")
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return zcashRPC.check_funds(address)
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return self.zcashRPC.check_funds(address)
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def check_fund_status(currency, address):
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def check_fund_status(self, currency, address):
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if currency == 'bitcoin':
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print("Checking funds in Bitcoin p2sh")
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return bitcoinRPC.get_fund_status(address)
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return self.bitcoinRPC.get_fund_status(address)
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else:
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print("Checking funds in Zcash p2sh")
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return zcashRPC.get_fund_status(address)
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return self.zcashRPC.get_fund_status(address)
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# TODO: function to calculate appropriate locktimes between chains
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# def verify_p2sh(trade):
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# htlc = create_htlc(trade.buy.currency, trade.buy.fulfiller, trade.buy.initiator, trade.commitment, trade.buy.locktime)
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# TODO: function to calculate appropriate locktimes between chains
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# def verify_p2sh(trade):
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# htlc = self.create_htlc(
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# trade.buy.currency, trade.buy.fulfiller,
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# trade.buy.initiator, trade.commitment,
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# trade.buy.locktime)
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# buyer_p2sh = htlc['p2sh']
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# print("Buyer p2sh:", buyer_p2sh)
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# If the two p2sh match...
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@ -58,123 +62,140 @@ def check_fund_status(currency, address):
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# else:
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# print("Compiled p2sh for htlc does not match what seller sent.")
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def create_htlc(currency, funder, redeemer, commitment, locktime):
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def create_htlc(self, currency, funder, redeemer, commitment, locktime):
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if currency == 'bitcoin':
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sell_p2sh = bitcoinRPC.hashtimelockcontract(funder, redeemer, commitment, locktime)
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sell_p2sh = self.bitcoinRPC.hashtimelockcontract(
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funder, redeemer, commitment, locktime)
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else:
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sell_p2sh = zcashRPC.hashtimelockcontract(funder, redeemer, commitment, locktime)
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sell_p2sh = self.zcashRPC.hashtimelockcontract(
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funder, redeemer, commitment, locktime)
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return sell_p2sh
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def fund_htlc(currency, p2sh, amount):
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def fund_htlc(self, currency, p2sh, amount):
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if currency == 'bitcoin':
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txid = bitcoinRPC.fund_htlc(p2sh, amount)
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txid = self.bitcoinRPC.fund_htlc(p2sh, amount)
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else:
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txid = zcashRPC.fund_htlc(p2sh, amount)
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txid = self.zcashRPC.fund_htlc(p2sh, amount)
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return txid
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def fund_contract(contract):
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txid = fund_htlc(contract.currency, contract.p2sh, contract.amount)
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def fund_contract(self, contract):
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txid = self.fund_htlc(
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contract.currency, contract.p2sh, contract.amount)
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return txid
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def fund_sell_contract(trade):
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def fund_sell_contract(self, trade):
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sell = trade.sell
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txid = fund_htlc(sell.currency, sell.p2sh, sell.amount)
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txid = self.fund_htlc(sell.currency, sell.p2sh, sell.amount)
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setattr(trade.sell, 'fund_tx', txid)
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save(trade)
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utils.save(trade)
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return txid
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def create_sell_p2sh(trade, commitment, locktime):
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def create_sell_p2sh(self, trade, commitment, locktime):
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# CREATE SELL CONTRACT
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sell = trade.sell
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contract = create_htlc(sell.currency, sell.initiator, sell.fulfiller, commitment, locktime)
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contract = self.create_htlc(sell.currency, sell.initiator,
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sell.fulfiller, commitment, locktime)
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print("sell contract", contract)
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setattr(trade.sell, 'p2sh', contract['p2sh'])
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setattr(trade.sell, 'redeemScript', contract['redeemScript'])
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setattr(trade.sell, 'redeemblocknum', contract['redeemblocknum'])
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setattr(trade.buy, 'locktime', contract['locktime'])
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save(trade)
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utils.save(trade)
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def create_buy_p2sh(trade, commitment, locktime):
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## CREATE BUY CONTRACT
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def create_buy_p2sh(self, trade, commitment, locktime):
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# CREATE BUY CONTRACT
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buy = trade.buy
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print("\nNow creating buy contract on the {0} blockchain where you will wait for the buyer to send funds...".format(buy.currency))
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buy_contract = create_htlc(buy.currency, buy.fulfiller, buy.initiator, commitment, locktime)
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print("\nNow creating buy contract on the {0} blockchain where you "
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"will wait for the buyer to send funds...".format(buy.currency))
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buy_contract = self.create_htlc(
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buy.currency, buy.fulfiller, buy.initiator, commitment, locktime)
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print("Buy contract", buy_contract)
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setattr(trade.buy, 'p2sh', buy_contract['p2sh'])
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setattr(trade.buy, 'redeemScript', buy_contract['redeemScript'])
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setattr(trade.buy, 'redeemblocknum', buy_contract['redeemblocknum'])
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setattr(trade.buy, 'locktime', buy_contract['locktime'])
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print("\nNow contact the buyer and tell them to send funds to this p2sh: {0}\n".format(trade.buy.p2sh))
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print("\nNow contact the buyer and tell them to send funds to this "
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"p2sh: {0}\n".format(trade.buy.p2sh))
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save(trade)
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utils.save(trade)
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def redeem_p2sh(contract, secret):
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def redeem_p2sh(self, contract, secret):
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currency = contract.currency
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if currency == 'bitcoin':
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res = bitcoinRPC.redeem_contract(contract, secret)
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res = self.bitcoinRPC.redeem_contract(contract, secret)
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else:
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res = zcashRPC.redeem_contract(contract, secret)
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res = self.zcashRPC.redeem_contract(contract, secret)
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return res
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def parse_secret(chain, txid):
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def parse_secret(self, chain, txid):
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if chain == 'bitcoin':
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secret = bitcoinRPC.parse_secret(txid)
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secret = self.bitcoinRPC.parse_secret(txid)
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else:
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secret = zcashRPC.parse_secret(txid)
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secret = self.zcashRPC.parse_secret(txid)
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return secret
|
||||
|
||||
#### Main functions determining user flow from command line
|
||||
def buyer_redeem(trade):
|
||||
# Main functions determining user flow from command line
|
||||
def buyer_redeem(self, trade):
|
||||
userInput.authorize_buyer_redeem(trade)
|
||||
if trade.sell.get_status() == 'redeemed':
|
||||
print("You already redeemed the funds and acquired {0} {1}".format(trade.sell.amount, trade.sell.currency))
|
||||
print("You already redeemed the funds and acquired "
|
||||
"{0} {1}".format(trade.sell.amount, trade.sell.currency))
|
||||
exit()
|
||||
else:
|
||||
# Buyer redeems seller's funded tx
|
||||
p2sh = trade.sell.p2sh
|
||||
currency = trade.sell.currency
|
||||
# p2sh = trade.sell.p2sh
|
||||
# currency = trade.sell.currency
|
||||
# Buy contract is where seller disclosed secret in redeeming
|
||||
if trade.buy.currency == 'bitcoin':
|
||||
secret = bitcoinRPC.parse_secret(trade.buy.redeem_tx)
|
||||
secret = self.bitcoinRPC.parse_secret(trade.buy.redeem_tx)
|
||||
else:
|
||||
secret = zcashRPC.parse_secret(trade.buy.redeem_tx)
|
||||
secret = self.zcashRPC.parse_secret(trade.buy.redeem_tx)
|
||||
print("Found secret in seller's redeem tx", secret)
|
||||
redeem_tx = redeem_p2sh(trade.sell, secret)
|
||||
redeem_tx = self.redeem_p2sh(trade.sell, secret)
|
||||
setattr(trade.sell, 'redeem_tx', redeem_tx)
|
||||
save(trade)
|
||||
utils.save(trade)
|
||||
exit()
|
||||
|
||||
def seller_redeem_p2sh(trade, secret):
|
||||
def seller_redeem_p2sh(self, trade, secret):
|
||||
buy = trade.buy
|
||||
userInput.authorize_seller_redeem(buy)
|
||||
|
||||
if trade.sell.get_status() == 'redeemed':
|
||||
print("You already redeemed the funds and acquired {0} {1}".format(buy.amount, buy.currency))
|
||||
print("You already redeemed the funds and acquired "
|
||||
"{0} {1}".format(buy.amount, buy.currency))
|
||||
exit()
|
||||
else:
|
||||
# Seller redeems buyer's funded tx (contract in p2sh)
|
||||
txs = redeem_p2sh(trade.buy, secret)
|
||||
print("You have redeemed {0} {1}!".format(buy.amount, buy.currency))
|
||||
txs = self.redeem_p2sh(trade.buy, secret)
|
||||
print("You have redeemed "
|
||||
"{0} {1}!".format(buy.amount, buy.currency))
|
||||
return txs
|
||||
|
||||
def buyer_fulfill(trade):
|
||||
def buyer_fulfill(self, trade):
|
||||
buy = trade.buy
|
||||
sell = trade.sell
|
||||
buy_p2sh_balance = check_p2sh(buy.currency, buy.p2sh)
|
||||
sell_p2sh_balance = check_p2sh(sell.currency, sell.p2sh)
|
||||
buy_p2sh_balance = self.check_p2sh(buy.currency, buy.p2sh)
|
||||
sell_p2sh_balance = self.check_p2sh(sell.currency, sell.p2sh)
|
||||
|
||||
if buy_p2sh_balance == 0:
|
||||
userInput.authorize_buyer_fulfill(sell_p2sh_balance, sell.currency, buy_p2sh_balance, buy.currency)
|
||||
userInput.authorize_buyer_fulfill(
|
||||
sell_p2sh_balance,
|
||||
sell.currency,
|
||||
buy_p2sh_balance,
|
||||
buy.currency)
|
||||
print("Buy amt:", buy.amount)
|
||||
txid = fund_buy_contract(trade)
|
||||
print("Fund tx txid:", txid)
|
||||
else:
|
||||
print("It looks like you've already funded the contract to buy {1}, the amount in escrow in the p2sh is {0}.".format(buy_p2sh_balance, buy.currency))
|
||||
print("Please wait for the seller to remove your funds from escrow to complete the trade.")
|
||||
print("It looks like you've already funded the contract to buy "
|
||||
"{1}, the amount in escrow in the p2sh is "
|
||||
"{0}.".format(buy_p2sh_balance, buy.currency))
|
||||
print("Please wait for the seller to remove your funds from "
|
||||
"escrow to complete the trade.")
|
||||
print_trade('buyer')
|
||||
|
||||
def initialize_trade(tradeid, **kwargs):
|
||||
def initialize_trade(self, tradeid, **kwargs):
|
||||
trade = Trade()
|
||||
conf = kwargs['conf']
|
||||
if conf == 'cli':
|
||||
|
@ -203,22 +224,22 @@ def initialize_trade(tradeid, **kwargs):
|
|||
print(trade.buy.__dict__)
|
||||
return tradeid, trade
|
||||
|
||||
|
||||
def seller_init(tradeid, trade):
|
||||
secret = generate_password()
|
||||
def seller_init(self, tradeid, trade):
|
||||
secret = utils.generate_password()
|
||||
db.save_secret(tradeid, secret)
|
||||
print("\nGenerated a secret preimage to lock funds. This will only be stored locally: ", secret)
|
||||
print("\nGenerated a secret preimage to lock funds. This will only "
|
||||
"be stored locally: ", secret)
|
||||
|
||||
hash_of_secret = sha256(secret)
|
||||
hash_of_secret = utils.sha256(secret)
|
||||
# TODO: Implement locktimes and mock block passage of time
|
||||
sell_locktime = 20
|
||||
buy_locktime = 10 # Must be more than first tx
|
||||
print("Creating pay-to-script-hash for sell contract...")
|
||||
|
||||
# create the p2sh addrs
|
||||
create_sell_p2sh(trade, hash_of_secret, sell_locktime)
|
||||
create_buy_p2sh(trade, hash_of_secret, buy_locktime)
|
||||
self.create_sell_p2sh(trade, hash_of_secret, sell_locktime)
|
||||
self.create_buy_p2sh(trade, hash_of_secret, buy_locktime)
|
||||
|
||||
trade.commitment = b2x(hash_of_secret)
|
||||
trade.commitment = utils.b2x(hash_of_secret)
|
||||
print("TRADE after seller init", trade.toJSON())
|
||||
return trade
|
||||
|
|
|
@ -1,53 +1,62 @@
|
|||
import unittest
|
||||
import unittest.mock as mock
|
||||
import xcat.cli as cli
|
||||
import xcat.db as db
|
||||
from xcat.tests.utils import mktrade
|
||||
from xcat.trades import Trade, Contract
|
||||
from xcat.tests.utils import test_trade
|
||||
from xcat.trades import Trade
|
||||
|
||||
|
||||
class SimpleTestCase(unittest.TestCase):
|
||||
def setUp(self):
|
||||
self.trade = mktrade()
|
||||
class TestCLI(unittest.TestCase):
|
||||
|
||||
def test_exporttrade(self):
|
||||
self.__class__.hexstr = cli.exporttrade('test')
|
||||
self.assertTrue(int(self.hexstr, 16))
|
||||
def test_save_state(self):
|
||||
pass
|
||||
|
||||
def test_checkSellStatus(self):
|
||||
pass
|
||||
|
||||
def test_buyer_check_status(self):
|
||||
pass
|
||||
|
||||
def test_seller_check_status(self):
|
||||
pass
|
||||
|
||||
def test_checkBuyStatus(self):
|
||||
pass
|
||||
|
||||
def test_importtrade(self):
|
||||
trade = cli.importtrade('test', self.__class__.hexstr)
|
||||
pass
|
||||
|
||||
def test_wormhole_importtrade(self):
|
||||
pass
|
||||
|
||||
def test_exporttrade(self):
|
||||
pass
|
||||
|
||||
class CliTest(SimpleTestCase):
|
||||
def test_findtrade(self):
|
||||
trade = cli.findtrade('test')
|
||||
pass
|
||||
|
||||
def test_find_role(self):
|
||||
pass
|
||||
|
||||
def test_checktrade(self):
|
||||
pass
|
||||
|
||||
def test_newtrade(self):
|
||||
trade = cli.newtrade('new', conf='regtest')
|
||||
self.assertTrue(isinstance(trade, Trade))
|
||||
pass
|
||||
|
||||
def test_listtrades(self):
|
||||
pass
|
||||
|
||||
def test_fundsell(self):
|
||||
trade = db.get('new')
|
||||
status = cli.seller_check_status(trade)
|
||||
print("Trade status: {0}\n".format(status))
|
||||
self.assertEqual(status, 'init')
|
||||
fund_tx = cli.fund_sell_contract(trade)
|
||||
print("Sent fund_tx", fund_tx)
|
||||
pass
|
||||
|
||||
# def test_fundbuy(self):
|
||||
# trade = db.get('new')
|
||||
# status = cli.buyer_check_status(trade)
|
||||
# self.assertEqual(status, 'sellerFunded')
|
||||
# fund_tx = cli.fund_contract(trade.buy)
|
||||
#
|
||||
# def test_seller_redeem(self):
|
||||
# trade = db.get('new')
|
||||
# status = cli.seller_check_status(trade)
|
||||
# self.assertEqual(status, 'buyerFunded')
|
||||
#
|
||||
# def test_buyer_redeem(self):
|
||||
# trade = db.get('new')
|
||||
# status = cli.buyer_check_status(trade)
|
||||
# self.assertEqual(status, 'sellerFunded')
|
||||
def test_fundbuy(self):
|
||||
pass
|
||||
|
||||
def test_seller_redeem(self):
|
||||
pass
|
||||
|
||||
def test_buyer_redeem(self):
|
||||
pass
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
|
|
|
@ -1,8 +1,20 @@
|
|||
import xcat.db as db
|
||||
|
||||
test_trade = {"sell": {"amount": 3.5, "redeemScript": "63a82003d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b68876a9147788b4511a25fba1092e67b307a6dcdb6da125d967022a04b17576a914c7043e62a7391596116f54f6a64c8548e97d3fd96888ac", "redeemblocknum": 1066, "currency": "bitcoin", "initiator": "myfFr5twPYNwgeXyjCmGcrzXtCmfmWXKYp", "p2sh": "2MuYSQ1uQ4CJg5Y5QL2vMmVPHNJ2KT5aJ6f", "fulfiller": "mrQzUGU1dwsWRx5gsKKSDPNtrsP65vCA3Z", "fund_tx": "5c5e91a89a08b2d6698f50c9fd9bb2fa22da6c74e226c3dd63d59511566a2fdb"}, "buy": {"amount": 1.2, "redeemScript": "63a82003d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b68876a9143ea29256c9d2888ca23de42a8b8e69ca2ec235b167023f0db17576a914c5acca6ef39c843c7a9c3ad01b2da95fe2edf5ba6888ac", "redeemblocknum": 3391, "currency": "zcash", "locktime": 10, "initiator": "tmFRXyju7ANM7A9mg75ZjyhFW1UJEhUPwfQ", "p2sh": "t2HP59RpfR34nBCWH4VVD497tkc2ikzgniP", "fulfiller": "tmTjZSg4pX2Us6V5HttiwFZwj464fD2ZgpY"}, "commitment": "03d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b6"}
|
||||
|
||||
def mktrade():
|
||||
db.create(test_trade, 'test')
|
||||
trade = db.get('test')
|
||||
return trade
|
||||
test_trade = {
|
||||
"sell": {
|
||||
"amount": 3.5,
|
||||
"redeemScript": "63a82003d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b68876a9147788b4511a25fba1092e67b307a6dcdb6da125d967022a04b17576a914c7043e62a7391596116f54f6a64c8548e97d3fd96888ac",
|
||||
"redeemblocknum": 1066,
|
||||
"currency": "bitcoin",
|
||||
"initiator": "myfFr5twPYNwgeXyjCmGcrzXtCmfmWXKYp",
|
||||
"p2sh": "2MuYSQ1uQ4CJg5Y5QL2vMmVPHNJ2KT5aJ6f",
|
||||
"fulfiller": "mrQzUGU1dwsWRx5gsKKSDPNtrsP65vCA3Z",
|
||||
"fund_tx": "5c5e91a89a08b2d6698f50c9fd9bb2fa22da6c74e226c3dd63d59511566a2fdb"},
|
||||
"buy": {
|
||||
"amount": 1.2,
|
||||
"redeemScript": "63a82003d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b68876a9143ea29256c9d2888ca23de42a8b8e69ca2ec235b167023f0db17576a914c5acca6ef39c843c7a9c3ad01b2da95fe2edf5ba6888ac",
|
||||
"redeemblocknum": 3391,
|
||||
"currency": "zcash",
|
||||
"locktime": 10,
|
||||
"initiator": "tmFRXyju7ANM7A9mg75ZjyhFW1UJEhUPwfQ",
|
||||
"p2sh": "t2HP59RpfR34nBCWH4VVD497tkc2ikzgniP",
|
||||
"fulfiller": "tmTjZSg4pX2Us6V5HttiwFZwj464fD2ZgpY"},
|
||||
"commitment": "03d58daab37238604b3e57d4a8bdcffa401dc497a9c1aa4f08ffac81616c22b6"}
|
||||
|
|
Loading…
Reference in New Issue